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Updated: Mar 6, 2026

Controlled Strain of 3D Hydrogels under Live Microscopy Imaging
Published on: December 4, 2020
Switchable surface structured hydrogel coatings
Sander Kommeren1, J Dongmo2, C W M Bastiaansen3
1Dept. of Chemical Engineering and Chemistry, Functional Organic Materials & Devices (SFD), Eindhoven University of Technology, Building 14 - HELIX STO 0.26, De Rondom 70 - 5612 AP, P.O. Box 513 - 5600 MB, Eindhoven, The Netherlands. s.kommeren@tue.nl.
Abstract:
Switchable surface structures based on hydrogels are an emerging field in material science, microfluidics, soft robotics and anti-fouling. Here, we describe a novel method that uses a photo-cross-linkable terpolymer to create a hydrogel coating with a switchable surface structure. The terpolymer is based on poly(N-isopropylacrylamide) (PNIPAm) and it is shown that simple coating technologies like slit die coating can be used under ambient conditions. It is also shown that the swelling ratio of the coating is controlled by the energy dose of ultraviolet (UV) light. Simple and complex surface structures were created using respectively single or multiple UV illumination steps through masks and it is shown that the hydrogel coatings can be reversibly switched from a structured state to a flat state with temperature.

